Earth and Planetary Sciences
Investigation
100%
Datum
100%
Water
100%
Lake
100%
Reflectance
100%
Synthetic Aperture Radar
100%
Chlorophyll
100%
Radar Data
100%
Network
36%
Model
27%
Regression
27%
Show
18%
Area
18%
Condition
9%
Improvement
9%
Information
9%
Detection
9%
Estimate
9%
In Situ
9%
Availability
9%
Correlation
9%
Sample
9%
Subject
9%
Spatial Variation
9%
Stable
9%
In Situ Measurement
9%
Engineering
Water
100%
Reflectance
100%
Synthetic Aperture Radar
100%
Radar Data
100%
Multilayers
54%
Perceptron
27%
Determines
18%
Regression
18%
Performance
9%
Demonstrates
9%
Models
9%
Measurer
9%
Network Model
9%
High Concentration
9%
Correlation
9%
Mutual Information
9%
Spatial Variation
9%
Situ Measurement
9%
Chemistry
Water Type
100%
Chlorophyll a
100%
Hyperspectral
100%
Concentration
36%
Polarization
18%
Sample
9%
Correlation
9%
Optical Property
9%
Computer Science
Case Study
100%
Synthetic Aperture Radar
100%
Networks
36%
Models
27%
Regression
27%
Multilayer Perceptron
27%
Correlation
9%
Availability
9%
Mutual Information
9%
Spatial Variation
9%
Chemical Engineering
Water
100%
Synthetic Aperture
100%
Chlorophyll
100%
Multilayer Neural Networks
27%
Gas Fuel Measurement
9%